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Constitutive activation of LXR in macrophages regulates metabolic and inflammatory gene expression: identification of ARL7 as a direct target

机译:LXR在巨噬细胞中的组成性激活调节代谢和炎性基因表达:将ARL7鉴定为直接靶标

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摘要

Ligand activation of liver X receptors (LXRs) has been shown to impact both lipid metabolism and inflammation. One complicating factor in studies utilizing synthetic LXR agonists is the potential for pharmacologic and receptor-independent effects. Here, we describe an LXR gain-of-function system that does not depend on the addition of exogenous ligand. We generated transgenic mice expressing a constitutively active VP16-LXRα protein from the aP2 promoter. These mice exhibit increased LXR signaling selectively in adipose and macrophages. Analysis of gene expression in primary macrophages derived from two independent VP16-LXRα transgenic lines confirmed the ability of LXR to drive expression of genes involved in cholesterol efflux and fatty acid synthesis. Moreover, VP16-LXRα expression also suppressed the induction of inflammatory genes by lipopolysaccharide to a comparable degree as synthetic agonist. We further utilized VP16-LXRα-expressing macrophages to identify and validate new targets for LXRs, including the gene encoding ADP-ribosylation factor-like 7 (ARL7). ARL7 has previously been shown to transport cholesterol to the membrane for ABCA1-associated removal and thus may be integral to the LXR-dependent efflux pathway. We show that the ARL7 promoter contains a functional LXRE and can be transactivated by LXRs in a sequence-specific manner, indicating that ARL7 is a direct target of LXR. These findings provide further support for an important role of LXRs in the coordinated regulation of lipid metabolic and inflammatory gene programs in macrophages.
机译:肝X受体(LXR)的配体活化已显示出会影响脂质代谢和炎症。利用合成LXR激动剂进行研究的一个复杂因素是可能产生药理作用和受体非依赖性作用。在这里,我们描述了一个LXR功能获得系统,该系统不依赖于外源配体的添加。我们生成了从aP2启动子表达组成性活性VP16-LXRα蛋白的转基因小鼠。这些小鼠在脂肪和巨噬细胞中选择性地表现出增加的LXR信号传导。对来自两个独立的VP16-LXRα转基因株系的初级巨噬细胞中基因表达的分析证实了LXR能够驱动涉及胆固醇外排和脂肪酸合成的基因表达。而且,VP16-LXRα的表达也将脂多糖诱导的炎症基因的诱导抑制到与合成激动剂相当的程度。我们进一步利用表达VP16-LXRα的巨噬细胞来鉴定和验证LXR的新靶标,包括编码ADP-核糖基化因子样7(ARL7)的基因。先前已证明ARL7可将胆固醇转运至膜上,以进行ABCA1相关的去除,因此可能是LXR依赖性外排途径不可或缺的部分。我们显示,ARL7启动子包含功能性LXRE,并且可以被LXR以序列特异性方式反式激活,表明ARL7是LXR的直接靶标。这些发现为LXR在巨噬细胞中脂类代谢和炎症基因程序的协调调控中的重要作用提供了进一步的支持。

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